LSBio
Rat Hyp / Hydroxyproline ELISA Kit (Sandwich ELISA)

Sandwich ELISA Platform Overview

Rat Hyp / Hydroxyproline ELISA Kit (Sandwich ELISA)

Reactivity:Rat
Detection MethodColorimetric
Format:96-Well Strip Plate
See all Hyp / Hydroxyproline antibodies →
$822.00each
Catalog Number: LS-F27461-1

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Overview

Description
Hyp / Hydroxyproline ELISA Kit LS-F27461 is a 96-Well enzyme-linked immunosorbent assay for the Quantitative detection of Rat Hyp / Hydroxyproline in Plasma, Serum. It is a Sandwich assay which can detect Hyp / Hydroxyproline down to 2.5 µg/ml. For Research Use Only
Reactivity
Rt
Intended Use
Research Use Only
Category
ELISA Kits > Traditional ELISA Kits

Assay Performance

Detection Method
Colorimetric
Assay Type
Quantitative
Assay Format
Sandwich Enzyme-Linked Immunosorbent Assay
Sensitivity
2.5 µg/ml
Detection Range
2.5 - 50 µg/ml
Intra-Assay CV%
<9%
Inter-Assay CV%
<10%
Compatible Sample Types
Plasma, Serum
Detection Wavelength (Colorimetric)
450 nm
About This Kit
Due to their limited shelf life, LSBio ELISA kits are not typically stocked as finished goods. Upon receipt of an order each kit is assembled and tested to ensure that it meets specifications before shipping. Minor changes may occur to the Range, Sensitivity, and Precision. In the event of a significant change the order would be confirmed with the customer before shipping ELISA kit lot numbers reflect the date of final assembly and testing for each specific kit rather than a bulk manufactured lot. All kits are tested to confirm that they fall within their defined Inter- and Intra- assay coefficient of variation.

Format

Format
96-Well Strip Plate
Kit Components
Adhesive Plate Sealers, Coated 96-well Strip Plate, Standard A, Standard B, Standard C, Standard D, Standard E, Standard F, Balance Solution, HRP-Conjugate, Wash Buffer (100x), Substrate A, Substrate B, Stop Solution

Storage & Handling

Storage Conditions
Short term: 4°C; Long term: see manual.

Documentation

Manuals
Manual
AT-MSCs Antifibrotic Activity is Improved by Eugenol through Modulation of TGF-ß/Smad Signaling Pathway in Rats. Moustafa Fathy, Motonori Okabe, Heba M Saad Eldien, Toshiko Yoshida. Molecules (Basel, Switzerland). 2020 January;25. PubMed: 31952158 PMC: PMC7024200

Request SDS/MSDS

To request an SDS/MSDS form for this product, please contact our Technical Support department at: technical@vectorlabs.com.